Virtu/Virtu/DiskIIDrive.cs
Sean Fausett 0182641281 Merged machine settings into machine components.
Added save state support to all machine components.
Switched from xml serialization to binary serialization.
Refactored audio service for performance.
Bumped machine version to 0.9.0 for next release.
Miscellaneous cosmetic or minor changes.
2010-11-29 09:08:11 +13:00

157 lines
4.8 KiB
C#

using System;
using System.IO;
using Jellyfish.Library;
using Jellyfish.Virtu.Services;
namespace Jellyfish.Virtu
{
public sealed class DiskIIDrive
{
public DiskIIDrive()
{
DriveArmStepDelta[0] = new int[] { 0, 0, 1, 1, 0, 0, 1, 1, -1, -1, 0, 0, -1, -1, 0, 0 }; // phase 0
DriveArmStepDelta[1] = new int[] { 0, -1, 0, -1, 1, 0, 1, 0, 0, -1, 0, -1, 1, 0, 1, 0 }; // phase 1
DriveArmStepDelta[2] = new int[] { 0, 0, -1, -1, 0, 0, -1, -1, 1, 1, 0, 0, 1, 1, 0, 0 }; // phase 2
DriveArmStepDelta[3] = new int[] { 0, 1, 0, 1, -1, 0, -1, 0, 0, 1, 0, 1, -1, 0, -1, 0 }; // phase 3
}
public void LoadState(BinaryReader reader, Version version)
{
if (reader == null)
{
throw new ArgumentNullException("reader");
}
_trackLoaded = reader.ReadBoolean();
_trackChanged = reader.ReadBoolean();
_trackNumber = reader.ReadInt32();
_trackOffset = reader.ReadInt32();
if (_trackLoaded)
{
reader.Read(_trackData, 0, _trackData.Length);
}
_disk = reader.ReadBoolean() ? Disk525.LoadState(reader, version) : null;
}
public void SaveState(BinaryWriter writer)
{
if (writer == null)
{
throw new ArgumentNullException("writer");
}
writer.Write(_trackLoaded);
writer.Write(_trackChanged);
writer.Write(_trackNumber);
writer.Write(_trackOffset);
if (_trackLoaded)
{
writer.Write(_trackData);
}
writer.Write(_disk != null);
if (_disk != null)
{
_disk.SaveState(writer);
}
}
public void InsertDisk(string fileName, bool isWriteProtected)
{
StorageService.LoadFile(fileName, stream => InsertDisk(fileName, stream, isWriteProtected));
}
public void InsertDisk(string name, Stream stream, bool isWriteProtected)
{
FlushTrack();
// TODO handle null param/empty string for eject, or add Eject()
_disk = Disk525.CreateDisk(name, stream.ReadAllBytes(), isWriteProtected);
_trackLoaded = false;
}
public void ApplyPhaseChange(int phaseState)
{
// step the drive head according to stepper magnet changes
int delta = DriveArmStepDelta[_trackNumber & 0x3][phaseState];
if (delta != 0)
{
int newTrackNumber = MathHelpers.Clamp(_trackNumber + delta, 0, TrackNumberMax);
if (newTrackNumber != _trackNumber)
{
FlushTrack();
_trackNumber = newTrackNumber;
_trackOffset = 0;
_trackLoaded = false;
}
}
}
public int Read()
{
if (LoadTrack())
{
int data = _trackData[_trackOffset++];
if (_trackOffset >= Disk525.TrackSize)
{
_trackOffset = 0;
}
return data;
}
return _random.Next(0x01, 0xFF);
}
public void Write(int data)
{
if (LoadTrack())
{
_trackChanged = true;
_trackData[_trackOffset++] = (byte)data;
if (_trackOffset >= Disk525.TrackSize)
{
_trackOffset = 0;
}
}
}
private bool LoadTrack()
{
if (!_trackLoaded && (_disk != null))
{
_disk.ReadTrack(_trackNumber, 0, _trackData);
_trackLoaded = true;
}
return _trackLoaded;
}
public void FlushTrack()
{
if (_trackChanged)
{
_disk.WriteTrack(_trackNumber, 0, _trackData);
_trackChanged = false;
}
}
public bool IsWriteProtected { get { return _disk.IsWriteProtected; } }
private const int TrackNumberMax = 0x44;
private const int PhaseCount = 4;
private readonly int[][] DriveArmStepDelta = new int[PhaseCount][];
private Disk525 _disk;
private bool _trackLoaded;
private bool _trackChanged;
private int _trackNumber;
private int _trackOffset;
private byte[] _trackData = new byte[Disk525.TrackSize];
private Random _random = new Random();
}
}